Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

COMBINED EFFECT OF LOCAL THERMAL NONEQUILIBRIUM AND GRAVITY MODULATION ON THERMAL INSTABILITY IN MICROPOLAR NANOFLUID SATURATED POROUS MEDIA

View through CrossRef
In the present paper an effect of gravity modulation in a horizontal parallel flat plate having micropolar nanofluid saturated by a porous medium is examined. Local thermal nonequilibrium (LTNE) has been observed for the problem, i.e., the fluid, particle, and solid matrix are at different temperatures. Onset of convection and heat and mass transfer for both the cases, i.e., linear stability and nonlinear stability, is analyzed. We conclude that rate of convection in the LTNE case is faster than in the LTE case. Effect of porosity is observed in the LTNE region, which is opposite to the effect observed in the LTE region. Increase in value of A, K<sub>1</sub>, and &delta; delay the rate of convection. Small value of frequency of gravity modulation forms a greater number of small periods which delay the rate of convection. On increasing the value, heat transfer increases. At higher frequency of modulation we obtain the case similar to unmodulated case.
Title: COMBINED EFFECT OF LOCAL THERMAL NONEQUILIBRIUM AND GRAVITY MODULATION ON THERMAL INSTABILITY IN MICROPOLAR NANOFLUID SATURATED POROUS MEDIA
Description:
In the present paper an effect of gravity modulation in a horizontal parallel flat plate having micropolar nanofluid saturated by a porous medium is examined.
Local thermal nonequilibrium (LTNE) has been observed for the problem, i.
e.
, the fluid, particle, and solid matrix are at different temperatures.
Onset of convection and heat and mass transfer for both the cases, i.
e.
, linear stability and nonlinear stability, is analyzed.
We conclude that rate of convection in the LTNE case is faster than in the LTE case.
Effect of porosity is observed in the LTNE region, which is opposite to the effect observed in the LTE region.
Increase in value of A, K<sub>1</sub>, and &delta; delay the rate of convection.
Small value of frequency of gravity modulation forms a greater number of small periods which delay the rate of convection.
On increasing the value, heat transfer increases.
At higher frequency of modulation we obtain the case similar to unmodulated case.

Related Results

Gravity data reduction, Bouguer anomaly, and gravity disturbance
Gravity data reduction, Bouguer anomaly, and gravity disturbance
Each point on the earth has a gravity and gravity potential value. Surfaces formed by connecting points with equal gravity potential values are called equipotential surfaces or lev...
Thermal Performance of Nanofluid in Automobile Radiator
Thermal Performance of Nanofluid in Automobile Radiator
The use of nanofluids as a coolant in automobile radiators is getting more attention for the radiator’s better performance. Continuous development in automotive industries has incr...
A New Method for Calculating Saturated Fat Content and Determining Appropriate Saturated Fat Levels in Foods
A New Method for Calculating Saturated Fat Content and Determining Appropriate Saturated Fat Levels in Foods
Calculating the saturated fat content per 100 g or 100 mL or the reference amount customarily consumed (RACC) of food shows the saturated fat content of some foods inappropriately....
Study of MHD Mixed Convention Flow and Heat Transfer Through Porous Media
Study of MHD Mixed Convention Flow and Heat Transfer Through Porous Media
In this present paper, the effects of chemical reaction on two-dimensional mixed convection flow and heat transfer of an electrically conducting micropolar fluid in a porous medium...
CALCULATION OF THE NONEQUILIBRIUM SYSTEMS CONSISTING OF AN AGGREGATE OF LOCALLY-EQUILIBRIUM SUBSYSTEMS
CALCULATION OF THE NONEQUILIBRIUM SYSTEMS CONSISTING OF AN AGGREGATE OF LOCALLY-EQUILIBRIUM SUBSYSTEMS
The basis of SLT is the postulate of nonequilibrium, according to which there is an objective property of matter – “nonequilibrium”, which characterizes the uneven distribution of ...
Performance Evaluation of Photovoltaic Thermal using MgO Nanofluid
Performance Evaluation of Photovoltaic Thermal using MgO Nanofluid
This study investigated the performance and efficiency of a photovoltaic thermal (PV/T) system utilizing a metal-based nanofluid, specifically MgO nanofluid. This research proposes...

Back to Top